Todescato Francesco, Fortunati Ilaria, Minotto Alessandro, Signorini Raffaella, Jasieniak Jacek J, Bozio Renato
Department of Chemical Science and U.R. INSTM, University of Padova, Via Marzolo 1, Padova I-35131, Italy.
Department of Materials Science and Engineering, Monash Energy Materials and Systems Institute (MEMSI), Monash University, 22 Alliance Lane, Room 109, Clayton 3800, Australia.
Materials (Basel). 2016 Aug 9;9(8):672. doi: 10.3390/ma9080672.
Semiconductor nanocrystals are rapidly spreading into the display and lighting markets. Compared with liquid crystal and organic LED displays, nanocrystalline quantum dots (QDs) provide highly saturated colors, wide color gamut, resolution, rapid response time, optical efficiency, durability and low cost. This remarkable progress has been made possible by the rapid advances in the synthesis of colloidal QDs and by the progress in understanding the intriguing new physics exhibited by these nanoparticles. In this review, we provide support to the idea that suitably engineered core/graded-shell QDs exhibit exceptionally favorable optical properties, photoluminescence and optical gain, while keeping the synthesis facile and producing QDs well suited for light emitting applications. Solid-state laser emitters can greatly profit from QDs as efficient gain materials. Progress towards fabricating low threshold, solution processed DFB lasers that are optically pumped using one- and two-photon absorption is reviewed. In the field of display technologies, the exploitation of the exceptional photoluminescence properties of QDs for LCD backlighting has already advanced to commercial levels. The next big challenge is to develop the electroluminescence properties of QD to a similar state. We present an overview of QLED devices and of the great perspectives for next generation display and lighting technologies.
半导体纳米晶体正在迅速进入显示和照明市场。与液晶和有机发光二极管显示器相比,纳米晶量子点(QD)具有高饱和色彩、宽色域、高分辨率、快速响应时间、光学效率高、耐久性好和低成本等优点。胶体量子点合成技术的迅速发展以及对这些纳米颗粒所展现出的引人入胜的新物理特性的深入理解,使得这一显著进展成为可能。在本综述中,我们支持这样一种观点,即经过适当设计的核/梯度壳量子点展现出格外优异的光学性质、光致发光和光学增益,同时保持合成过程简便,并生产出非常适合发光应用的量子点。固态激光发射器可以从量子点作为高效增益材料中大大受益。本文综述了在制造低阈值、采用单光子和双光子吸收进行光泵浦的溶液处理分布反馈激光器方面取得的进展。在显示技术领域,利用量子点卓越的光致发光特性用于液晶显示器背光源已发展到商业水平。下一个重大挑战是将量子点的电致发光特性提升到类似水平。我们概述了量子点发光二极管器件以及下一代显示和照明技术的广阔前景。